The integration formulas for 1 / u 2 − a 2 in Theorem 6.9.6 are valid for u > a . Show that the following formula is valid for u < − a : ∫ d u u 2 − a 2 = − cosh − 1 − u a + C or ln u + u 2 − a 2 + C
The integration formulas for 1 / u 2 − a 2 in Theorem 6.9.6 are valid for u > a . Show that the following formula is valid for u < − a : ∫ d u u 2 − a 2 = − cosh − 1 − u a + C or ln u + u 2 − a 2 + C
The integration formulas for
1
/
u
2
−
a
2
in Theorem
6.9.6
are valid for
u
>
a
. Show that the following formula is valid for
u
<
−
a
:
∫
d
u
u
2
−
a
2
=
−
cosh
−
1
−
u
a
+
C
or
ln
u
+
u
2
−
a
2
+
C
With differentiation, one of the major concepts of calculus. Integration involves the calculation of an integral, which is useful to find many quantities such as areas, volumes, and displacement.
5
Use the method of disks to find the volume of the solid that is obtained
when the region under the curve y = over the interval [4,17] is rotated
about the x-axis.
3. Use the method of washers to find the volume of the solid that is obtained
when the region between the graphs f(x) = √√2 and g(x) = secx over the
interval ≤x≤ is rotated about the x-axis.
4. Use cylindrical shells to find the volume of the solid generated when the
region enclosed by the given curves is revolved about the x-axis.
y = √√x, y = 0, y = √√3
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